Published on in Vol 9, No 1 (2020): January

Preprints (earlier versions) of this paper are available at https://preprints.jmir.org/preprint/15022, first published .
Smartphone Cardiac Rehabilitation, Assisted Self-Management Versus Usual Care: Protocol for a Multicenter Randomized Controlled Trial to Compare Effects and Costs Among People With Coronary Heart Disease

Smartphone Cardiac Rehabilitation, Assisted Self-Management Versus Usual Care: Protocol for a Multicenter Randomized Controlled Trial to Compare Effects and Costs Among People With Coronary Heart Disease

Smartphone Cardiac Rehabilitation, Assisted Self-Management Versus Usual Care: Protocol for a Multicenter Randomized Controlled Trial to Compare Effects and Costs Among People With Coronary Heart Disease

Journals

  1. Huang H, Wang Y, Wang X, Lei Y. Association of CYP4F2 and CTRP9 polymorphisms and serum selenium levels with coronary artery disease. Medicine 2020;99(22):e20494 View
  2. Saadi A, Kanmanthareddy A, Narayanan M, Hardy K, Williams M, Alla V. Access to smart devices and utilization of online health resources among older cardiac rehabilitation participants. World Journal of Cardiology 2020;12(5):203 View
  3. Liu J, Xu K, Zhu G, Zhang Q, Li X. Effects of smartphone-based interventions and monitoring on bipolar disorder: A systematic review and meta-analysis. World Journal of Psychiatry 2020;10(11):272 View
  4. Taralunga D, Florea B. A Blockchain-Enabled Framework for mHealth Systems. Sensors 2021;21(8):2828 View
  5. Pandey A, Golbus J, Topol E. Cardiac rehabilitation in the digital era. The Lancet 2021;398(10294):16 View
  6. Carrillo Alemán L, Roy Añón I, Herrero Brocal M, Alonso Salinas G. Telecardiología. De la prevención primaria a la secundaria. REC: CardioClinics 2022;57:S3 View
  7. Premkumar M, Kiran A, Rajasekar S, Kumar A. Effect of Smartphone Assisted Cardiac Rehabilitation Self-Management (SACRSM) on Talk Test Value and Six Minute Walk Test Distance in Uncomplicated Cardio Vascular Disease (CVD) Patient – Single Case Study. International Journal of Health Sciences and Pharmacy 2022:62 View
  8. Ventura F, Sousa P, Dixe M, Ferreira P, Martinho R, Dias S, Morais J, Gonçalves L. A Clinical Decision Support System for Remote Monitoring of Cardiovascular Disease Patients: A Clinical Study Protocol. Frontiers in Public Health 2022;10 View
  9. Wang X, Xu L, Lee G, Song A, Shao J, Chen D, Zhang H, Chen H. Development of an integrated cardiac rehabilitation program to improve the adaptation level of patients after acute myocardial infarction. Frontiers in Public Health 2023;11 View
  10. BATALIK L, FILAKOVA K, SLADECKOVA M, DOSBABA F, SU J, PEPERA G. The cost-effectiveness of exercise-based cardiac telerehabilitation intervention: a systematic review. European Journal of Physical and Rehabilitation Medicine 2023;59(2) View
  11. Shi W, Green H, Sikhosana N, Fernandez R. Effectiveness of Telehealth Cardiac Rehabilitation Programs on Health Outcomes of Patients With Coronary Heart Diseases. Journal of Cardiopulmonary Rehabilitation and Prevention 2024;44(1):15 View
  12. Poot C, Meijer E, Fokkema M, Chavannes N, Osborne R, Kayser L. Translation, cultural adaptation and validity assessment of the Dutch version of the eHealth Literacy Questionnaire: a mixed-method approach. BMC Public Health 2023;23(1) View
  13. Lin S, Wang M, Jing C, Zhang S, Chen J, Liu R. The influence of AI on the economic growth of different regions in China. Scientific Reports 2024;14(1) View
  14. Alshahrani N, Hartley A, Howard J, Hajhosseiny R, Khawaja S, Seligman H, Akbari T, Alharbi B, Bassett P, Al-Lamee R, Francis D, Kaura A, Kelshiker M, Peters N, Khamis R. Randomized Trial of Remote Assessment of Patients After an Acute Coronary Syndrome. Journal of the American College of Cardiology 2024;83(23):2250 View

Books/Policy Documents

  1. Shem K, Irgens I, Alexander M. Telerehabilitation. View